Cohen-Salmon Martine, Ott Thomas, Michel Vincent, Hardelin Jean Pierre, Perfettini Isabelle, Eybalin Michel, Wu Tao, Marcus Daniel C, Wangemann Philine, Willecke Klaus, Petit Christine
Unité de Génétique des Déficits Sensoriels, CNRS URA 1968, Institut Pasteur, 25 rue du Dr. Roux, 75724 Paris cedex 15, France.
Curr Biol. 2002 Jul 9;12(13):1106-11. doi: 10.1016/s0960-9822(02)00904-1.
Mutations in the gene encoding the gap junction protein connexin26 (Cx26) are responsible for the autosomal recessive isolated deafness, DFNB1, which accounts for half of the cases of prelingual profound hereditary deafness in Caucasian populations. To date, in vivo approaches to decipher the role of Cx26 in the inner ear have been hampered by the embryonic lethality of the Cx26 knockout mice. To overcome this difficulty, we performed targeted ablation of Cx26 specifically in one of the two cellular networks that it underlies in the inner ear, namely, the epithelial network. We show that homozygous mutant mice, Cx26(OtogCre), have hearing impairment, but no vestibular dysfunction. The inner ear developed normally. However, on postnatal day 14 (P14), i.e., soon after the onset of hearing, cell death appeared and eventually extended to the cochlear epithelial network and sensory hair cells. Cell death initially affected only the supporting cells of the genuine sensory cell (inner hair cell, IHC), thus suggesting that it could be triggered by the IHC response to sound stimulation. Altogether, our results demonstrate that the Cx26-containing epithelial gap junction network is essential for cochlear function and cell survival. We conclude that prevention of cell death in the sensory epithelium is essential for any attempt to restore the auditory function in DFNB1 patients.
编码间隙连接蛋白连接蛋白26(Cx26)的基因突变是导致常染色体隐性遗传性单纯性耳聋DFNB1的原因,该类型耳聋在白种人群中占语前重度遗传性耳聋病例的一半。迄今为止,由于Cx26基因敲除小鼠具有胚胎致死性,通过体内实验来解读Cx26在内耳中的作用一直受到阻碍。为克服这一困难,我们在内耳中Cx26所构成的两个细胞网络之一(即上皮网络)中特异性地对Cx26进行了靶向敲除。我们发现纯合突变小鼠Cx26(OtogCre)存在听力障碍,但没有前庭功能障碍。内耳发育正常。然而,在出生后第14天(P14),即听力开始后不久,细胞死亡出现并最终扩展至耳蜗上皮网络和感觉毛细胞。细胞死亡最初仅影响真正感觉细胞(内毛细胞,IHC)的支持细胞,因此提示它可能由IHC对声音刺激的反应所触发。总之,我们的结果表明,含有Cx26的上皮间隙连接网络对于耳蜗功能和细胞存活至关重要。我们得出结论,对于任何试图恢复DFNB1患者听觉功能的尝试而言,防止感觉上皮细胞死亡至关重要。